Background: Magnetic Resonance linear accelerator (MR-linac) systems represent a new type of technology that allows for online MR-guidance for high precision radiotherapy (RT). Currently, the first MR-linac installations are being introduced clinically. Since the imaging performance of these integrated MR-linac systems is critical for their application, a thorough commissioning of the MRI performance is essential. However, guidelines on the commissioning of MR-guided RT systems are not yet defined and data on the performance of MR-linacs are not yet available. Materials & methods: Here we describe a comprehensive commissioning protocol, which contains standard MRI performance measurements as well as dedicated hybrid tests that specifically ...
Purpose: The pursuit of real-time image guided radiotherapy using optimal tissue contrast has seen t...
Purpose: The pursuit of real-time image guided radiotherapy using optimal tissue contrast has seen t...
Objectives:To systematically identify the preferred magnetic resonance imaging (MRI) sequences follo...
Background: Magnetic Resonance linear accelerator (MR-linac) systems represent a new type of technol...
BACKGROUND:Magnetic Resonance linear accelerator (MR-linac) systems represent a new type of technolo...
Purpose: Recently, MR-linacs have been integrated into clinical practice, introducing new needs for ...
\u3cp\u3ePURPOSE/OBJECTIVES: In radiotherapy the healthy tissue involvement still poses serious dose...
PURPOSE: Systems for magnetic resonance (MR-) guided radiotherapy enable daily MR imaging of cancer ...
The integration of 1.5 T MRI functionality with a radiotherapy linear accelerator (linac) has been p...
PURPOSE: High-field magnetic resonance-linear accelerators (MR-Linacs), linear accelerators combined...
Purpose: High-field magnetic resonance-linear accelerators (MR-Linacs), linear accelerators combined...
Purpose: Magnetic resonance image (MRI)-guided radiation therapy with the 1.5 Tesla magnetic resonan...
The desire to utilise soft-tissue image guidance at the time of radiation treatment has led to the d...
This thesis concerns the Unity MRI-linac (and its prototypes). The overall aim was to ensure that t...
The 1.5T hybrid MRI/linear accelerator (MR-linac) has recently been introduced into clinical practic...
Purpose: The pursuit of real-time image guided radiotherapy using optimal tissue contrast has seen t...
Purpose: The pursuit of real-time image guided radiotherapy using optimal tissue contrast has seen t...
Objectives:To systematically identify the preferred magnetic resonance imaging (MRI) sequences follo...
Background: Magnetic Resonance linear accelerator (MR-linac) systems represent a new type of technol...
BACKGROUND:Magnetic Resonance linear accelerator (MR-linac) systems represent a new type of technolo...
Purpose: Recently, MR-linacs have been integrated into clinical practice, introducing new needs for ...
\u3cp\u3ePURPOSE/OBJECTIVES: In radiotherapy the healthy tissue involvement still poses serious dose...
PURPOSE: Systems for magnetic resonance (MR-) guided radiotherapy enable daily MR imaging of cancer ...
The integration of 1.5 T MRI functionality with a radiotherapy linear accelerator (linac) has been p...
PURPOSE: High-field magnetic resonance-linear accelerators (MR-Linacs), linear accelerators combined...
Purpose: High-field magnetic resonance-linear accelerators (MR-Linacs), linear accelerators combined...
Purpose: Magnetic resonance image (MRI)-guided radiation therapy with the 1.5 Tesla magnetic resonan...
The desire to utilise soft-tissue image guidance at the time of radiation treatment has led to the d...
This thesis concerns the Unity MRI-linac (and its prototypes). The overall aim was to ensure that t...
The 1.5T hybrid MRI/linear accelerator (MR-linac) has recently been introduced into clinical practic...
Purpose: The pursuit of real-time image guided radiotherapy using optimal tissue contrast has seen t...
Purpose: The pursuit of real-time image guided radiotherapy using optimal tissue contrast has seen t...
Objectives:To systematically identify the preferred magnetic resonance imaging (MRI) sequences follo...